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The sintered Mn5−xGe3Nix alloy produced a refrigeration capacity of 43 J kg−1, peak entropy change at 282 K, and operating temperature range of 32 K under ΔH = 1 T which are possibly suitable for room-temperature magnetic refrigeration.
The composite refrigerant with refrigeration capacity of 52 J kg−1, peak entropy change at 300 K, and operating temperature range of 45 K under ΔH = 10 kOe was suitable for room-temperature magnetic refrigeration.
This observation paves the way to the hypothesis that peak entropy change will happen at the time instant on diffusion time axis when dominant image structures just start blending with the background right at their boundaries.
Peak or near peak entropy values (∼2) were observed in the E, NS4a and NS5 proteins.
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The peak in entropy change graph, thus, presents itself as a suitable stopping time for the linear anisotropic diffusion process.
c gives a comparison of average ridge width with Logarithmic scale for farthest peak in Entropy change.
The diffused image resulting from stopping the diffusion process at the location of the second peak in entropy change is shown in c.
The diffused image resulting from stopping the diffusion process at the location of the peak in entropy change is shown in (d).
Hoping that this peak in entropy change will remain fixed at this scale with the noise added to the image, the best possible stopping time will be the scale of the peak.
The diffused image obtained by peak of entropy-change is depicted in (c).
The optimally diffused image stopped at the farthest peak in entropy-change curve is displayed in (f).
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com